US264301A - johnson - Google Patents

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US264301A
US264301A US264301DA US264301A US 264301 A US264301 A US 264301A US 264301D A US264301D A US 264301DA US 264301 A US264301 A US 264301A
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ring
pins
shaft
lever
valve
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F01MACHINES OR ENGINES IN GENERAL; ENGINE PLANTS IN GENERAL; STEAM ENGINES
    • F01BMACHINES OR ENGINES, IN GENERAL OR OF POSITIVE-DISPLACEMENT TYPE, e.g. STEAM ENGINES
    • F01B3/00Reciprocating-piston machines or engines with cylinder axes coaxial with, or parallel or inclined to, main shaft axis
    • F01B3/02Reciprocating-piston machines or engines with cylinder axes coaxial with, or parallel or inclined to, main shaft axis with wobble-plate
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T74/00Machine element or mechanism
    • Y10T74/16Alternating-motion driven device with means during operation to adjust stroke
    • Y10T74/1625Stroke adjustable to zero and/or reversible in phasing
    • Y10T74/1683Cam and follower drive
    • Y10T74/1692Axial-type cam [e.g., wabbler type]

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  • This invention relates to improvements on the variable valve-gear for which I obtained Letters Patent on the 9th January, 1877, No. 186,135; and it consists, first, inswiveling a ring or its equivalent upon two points or pins (hereinafter called shaftpins) on opposit i sides of a shaft, upon which another ring or its equivalent, armed with two projections or catches, (hereinafter called ring pins,) is free to slide, and by interlocking with its ringpins into the valve cranks or links causes the valve-rods to travel; second, in so connecting one of the ring-pins or its equivalent with a reversing-screw or equivalent apparatus that by moving the reversing-handle the inner ring and the ring-pins aforesaid are male to stand at rightangles tothe shaft and parallel to a line joining the two points or pins aforesaid, or at an angle with that line on either side, and thus reverse or stop the valve-motion and
  • Figures land 2 are transverse and longitudinal sections of variable valve-gear as applied to a single-acting reversible engine; Figs. 3 and 4, tranvserse and longitudinal sections of variable valvegear as applied to a double-actin g reversible engine; Figs. 5 and 6, transverse and longi-' tudinal sections of variable valve-gear as applied to engines where the space of the main shaft is confined, and here the ringD is keyed to the shaft instead of swiveling thereon.
  • A is the main shaft; B, shaft-pin, on which the disk 0 is moved so as to produce the de- (No model.) Patented in England March 23, 1881, No. 1,290.
  • the pin F works into the lead-motion, (herrinafter described,) and each of them works into a slot of a link forming one arm of a bell-crank lever, E, each working the valve rod of one of the two coupled engines. I sometimes use three separate pins, as shown in Fig. 3.
  • the lead mechanism is a guide, H, or other apparatus linked to the handle L, working on one of the ring-pins F, a fulcrum or quadrant, I, and is so arranged that by moving the lever L or a screw the outer ring or strap, D, is caused to slide on the ring 0, and the position of the outer and inner rings relatively to each other is changed.
  • the best form of mechanism perhaps, for this purpose is shown in Figs. 3 and 4, in which a bell-crank lever, B", is pivoted on the crank-shaft A or its hearing.
  • the position of one arm H of the bell-crank lever is regulated by a screw or handle, L, (not shown in Figs. 3 and 4,) while the other arm carries a fork or slotted link or guide, H, fit- I ting round the aforesaid pin F.
  • a screw or handle, L (not shown in Figs. 3 and 4,)
  • the other arm carries a fork or slotted link or guide, H, fit- I ting round the aforesaid pin F.
  • the bellcrank lever or link H moves with it, and with it moves the outer ring, D, on the inner, G, and consequently the ring-pin F; or I may adopt the plan shown in Fig. 1, where the guide 11 slides on a quadrant, 1.
  • the rings 0 and D are preferably made, the outer one, D, like an eccentric-strap with two or more pins, F and F, aforesaid, the inner one, C, formed of two rings bolted side to side and grasping the shaft-pins on the shaft between them.
  • the inner ring has a connecting arm or link, P, to one side, at a point equidistant from the ends of the shaft-pins B, and connected to the reversing or cutofi'lever by mechanism that will permit of the inner ring revolving with the shaft.
  • One plan of doing this is to link the inner ring, 0, near its periphery to a second ring or washer, M, sliding on key or feathers on the shaft A, which ring has a strap, N, round it linked to the reversing-lever, so that by moving the reversing-lever the ring 0 is drawn to one side, or rather turns on its pivot, (the shaft-pin B.)
  • valverods K are actuated through a slide, M, which moves on a quadrant or link, N, pivoted in P, and swiveled to and fro by the motion caused by the angular position of the ring 0 on the shaft A as it rotates.
  • the mode of action is as follows: To cutoff steam or reverse the engines shown in Figs. 1, 2, 3, and 4, the ring or washer M is moved on the crank-shaft by means of a handle, thus altering the angular position of the ring D and giving greater or less travel to the valves, or reversing the engine.
  • the engine shown in Figs. 5 and 6 is reversed by moving the slideblock M by means of the handle 1% along the quadrant N.
  • the position of the strap or ring D on ring 0 is regulated by means of the guide H, which is actuated by a handle or screw.
  • I claim- 1 In combination with the longitudinallyreciprocatiug valve rod, the operatinggear therefor, consisting of the disk revolving with thedriving-shaftobliquely toits axis,combined with the non-rotating ring or strap encirelii'ig said disk, and an arm for reciprocating the valve-rod attached to and vibrated by means of the non-rotating ring, substantially as described and shown.
  • the pivoted ring G made in two halves and bolted together, thus inclosing the ends of the pivots, in combination with the sliding ring D, fitting into the groove formed by the two halves of O, substantially as and for the purposes described.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Mechanically-Actuated Valves (AREA)

Description

3 Sheets-Sheet 1 W. JOHNSON.
VARIABLE VALVE GEAR.
1 e d 0 M 0 N No. 264,301. Patented Sept.12, 1882.
[N l EN TOR (No Model.) 3 Sheets-Sheet 2.
.. W., JOHNSON.
' VARIABLE 7ALVE GEAR. I No. 264,301. Patented Sept. 12, 1882.
A Hams (N0 Model.)
3 Sheets-Sheet 3. w. JOHNSON.
VARIABLE VALVE GEAR.
No. 264,301; Patented Sept. 12, 1882.
N YEN TOR:
I/YJTNESSESF v d frny UNITED STATES PATENT OFFICE,
' WILBERFOROE JOHNSON, OF LIVERPOOL, OOUNTY'OF LANCASTER,
ENGLAND.
VARIABLE VALVE-GEAR.
SPECIFICATION forming part of Letters Patent No. 264,301, dated September 12, 1882.
Application filed March 20, 1882.
To all whom it may concern:
Beit known that I WILBERFORCE JOHNSON, of Liverpool, in the county of Lancaster, in the Kingdom of England, have invented a new and Improved Variable Valve-Gear, (for which I have received Letters Patent in England, No. 1,280, dated 23d March, 1881;) and I do hereby declare that the following is a full, clear, and exact description of the same, which will enable others skilled in the art to which it appertains to make and use the same.
This invention relates to improvements on the variable valve-gear for which I obtained Letters Patent on the 9th January, 1877, No. 186,135; and it consists, first, inswiveling a ring or its equivalent upon two points or pins (hereinafter called shaftpins) on opposit i sides of a shaft, upon which another ring or its equivalent, armed with two projections or catches, (hereinafter called ring pins,) is free to slide, and by interlocking with its ringpins into the valve cranks or links causes the valve-rods to travel; second, in so connecting one of the ring-pins or its equivalent with a reversing-screw or equivalent apparatus that by moving the reversing-handle the inner ring and the ring-pins aforesaid are male to stand at rightangles tothe shaft and parallel to a line joining the two points or pins aforesaid, or at an angle with that line on either side, and thus reverse or stop the valve-motion and, third, in arranging a lead-motion by which-the positions of the outer ring and ring-pins are caused to vary, and thus the amount of lead is changed.
Referring to the drawings, Figures land 2 are transverse and longitudinal sections of variable valve-gear as applied to a single-acting reversible engine; Figs. 3 and 4, tranvserse and longitudinal sections of variable valvegear as applied to a double-actin g reversible engine; Figs. 5 and 6, transverse and longi-' tudinal sections of variable valve-gear as applied to engines where the space of the main shaft is confined, and here the ringD is keyed to the shaft instead of swiveling thereon.
In these drawings like letters apply to like parts.
A is the main shaft; B, shaft-pin, on which the disk 0 is moved so as to produce the de- (No model.) Patented in England March 23, 1881, No. 1,290.
sired angle for working the valves; D, collar or strap in which pins F F are inserted E, link of valve-crank lever; Gr, valve-crank; K, valve-rod; H, guide; I, quadrant on which h slides, thus causing the collar D to change its position with the disk O, and thereby creating the desired amount of lead; L, handle for working guide H; M, sleeve connected with disk O by link P; R, cut-off and reversinglever; N, strap of sleeve M, carrying two pins which work into cranks of lever It in Figs. 5 and 6; N, quadrant or link connected to the link E and pivotedinl; M, slide-block moved to and fro on quadrant N by handle It; 0, quadrant-lever; P, bearing for lever O.
In carrying out my invention I piefer to fix a pin, B, forming the shaft-pins projecting on both sides at right angles right through the crank shaft or axle on the shalt A, with bearings on the shaft-pins B. A ring, O, made in two parts bolted together, is placed around the shalt, but with internal diameter larger than the diameter of the shalt A,so as to leave plenty of play. Sliding in a groove on the periphery of the ring 0, I place a second ring, D, like the strap of an eccentric, and upon the periphery of this weld or otherwise. tix two pins, I and F, in ordinary pairs of engines. The pin F works into the lead-motion, (herrinafter described,) and each of them works into a slot of a link forming one arm of a bell-crank lever, E, each working the valve rod of one of the two coupled engines. I sometimes use three separate pins, as shown in Fig. 3. Secured to each of the pins by a nut is a thimble, F, to facilitate their workin The lead mechanism is a guide, H, or other apparatus linked to the handle L, working on one of the ring-pins F, a fulcrum or quadrant, I, and is so arranged that by moving the lever L or a screw the outer ring or strap, D, is caused to slide on the ring 0, and the position of the outer and inner rings relatively to each other is changed. The best form of mechanism, perhaps, for this purpose is shown in Figs. 3 and 4, in which a bell-crank lever, B", is pivoted on the crank-shaft A or its hearing. The position of one arm H of the bell-crank lever is regulated by a screw or handle, L, (not shown in Figs. 3 and 4,) while the other arm carries a fork or slotted link or guide, H, fit- I ting round the aforesaid pin F. By regulating the handle or equivalent screw the bellcrank lever or link H moves with it, and with it moves the outer ring, D, on the inner, G, and consequently the ring-pin F; or I may adopt the plan shown in Fig. 1, where the guide 11 slides on a quadrant, 1. The rings 0 and D are preferably made, the outer one, D, like an eccentric-strap with two or more pins, F and F, aforesaid, the inner one, C, formed of two rings bolted side to side and grasping the shaft-pins on the shaft between them. The inner ring has a connecting arm or link, P, to one side, at a point equidistant from the ends of the shaft-pins B, and connected to the reversing or cutofi'lever by mechanism that will permit of the inner ring revolving with the shaft. One plan of doing this is to link the inner ring, 0, near its periphery to a second ring or washer, M, sliding on key or feathers on the shaft A, which ring has a strap, N, round it linked to the reversing-lever, so that by moving the reversing-lever the ring 0 is drawn to one side, or rather turns on its pivot, (the shaft-pin B.)
in Figs. 5 and 6 the valverods K are actuated through a slide, M, which moves on a quadrant or link, N, pivoted in P, and swiveled to and fro by the motion caused by the angular position of the ring 0 on the shaft A as it rotates.
The mode of action is as follows: To cutoff steam or reverse the engines shown in Figs. 1, 2, 3, and 4, the ring or washer M is moved on the crank-shaft by means of a handle, thus altering the angular position of the ring D and giving greater or less travel to the valves, or reversing the engine. The engine shown in Figs. 5 and 6 is reversed by moving the slideblock M by means of the handle 1% along the quadrant N. To alter the lead, the position of the strap or ring D on ring 0 is regulated by means of the guide H, which is actuated by a handle or screw.
I claim- 1. In combination with the longitudinallyreciprocatiug valve rod, the operatinggear therefor, consisting of the disk revolving with thedriving-shaftobliquely toits axis,combined with the non-rotating ring or strap encirelii'ig said disk, and an arm for reciprocating the valve-rod attached to and vibrated by means of the non-rotating ring, substantially as described and shown.
2. The rotary main shaft and the disk carried thereby, anti adjustable as to its obliquity thereon, in combination with the external ring, D, and theexternal link or strap, E, the latter having at rightangles to each other a pivotal support and a pivotal connection with the ring D, substantially as described and shown.
3. The pivoted ring G, made in two halves and bolted together, thus inclosing the ends of the pivots, in combination with the sliding ring D, fitting into the groove formed by the two halves of O, substantially as and for the purposes described.
4. The combination of the ring 0, adjusted or adjustable so as to stand obliquely to the axis of the shaft, and the sliding ring D, carrying pins F, actuating the valve-gear, with the adjustable guide H, regulating the angle that the pins F shall make with the pivots B, for the purposes described.
5. The combination of the ring D, sliding on a path adjusted at or adjustable to an angle oblique to the shaft, with the pinsFand slotted frame E, actuating the valve-gear, substantially as described.
6. The combination of the lever B, sliding ring N, sleeve M, and connecting device P with the pivoted disk 0.
7. The combination of the lever It, the slide M, the quadrant or link N, the quadrant-lever O, and the link E with the disk 0.
\VILBERFOROE JOHNSON.
Witnesses:
I. O. OBRIEN, J OIIN HAYES.
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